自然键轨道
卤化物
密度泛函理论
化学
钙钛矿(结构)
锑
原子轨道
卤素
非共价相互作用
结晶学
分子轨道
轨道杂交
带隙
化学物理
氢键
计算化学
无机化学
分子
材料科学
分子轨道理论
物理
有机化学
电子
量子力学
光电子学
烷基
作者
Aaron D. Nicholas,Leah C. Garman,Nicolina Albano,Christopher L. Cahill
摘要
Reported is a series of eight antimony halide perovskite derivatives synthesized from acidic aqueous solutions of antimony oxide and halogen substituted pyridines. These materials feature anionic one-dimensional antimony halide (SbX; X = Cl, Br, I) chains or ribbons charge-balanced by organic para-halopyridinium cations (XPy; X = H, Cl, Br) which assemble into three-dimensional networks via halogen and hydrogen noncovalent interactions (NCIs) between ion pairs. Computational density functional theory (DFT) based natural bonding orbital (NBO) and density of state (DOS) methods were utilized to map the band structure and quantify and categorize noncovalent interaction strength and type. Moreover, we determined the presence of hybridized intermediate bands which are responsible for the small bandgap energies within this family and arise from mixing of the halide p-states and the Sb s-states. We note that the degree of hybridization, and thus optical properties, is influenced primarily by changes about inner sphere bonding and independent of second sphere interactions. This report is the first to specifically monitor the evolution of haloantimonate(III) hybrid perovskite atomic and molecular orbitals involved in optical behavior as a function of inner and outer sphere effects.
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